Uses of Record Class
org.orekit.signal.FieldSignalReceptionCondition
Packages that use FieldSignalReceptionCondition
Package
Description
This package contains physical models for measurement prediction.
This package contains methods and architecture for signal travel time.
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Uses of FieldSignalReceptionCondition in org.orekit.estimation.measurements.model
Methods in org.orekit.estimation.measurements.model with parameters of type FieldSignalReceptionConditionModifier and TypeMethodDescriptionprotected <T extends CalculusFieldElement<T>>
FieldVector3D<T> AbstractAngularMeasurementModel.getEmitterToReceiverVector(FieldSignalReceptionCondition<T> receptionCondition, FieldPVCoordinatesProvider<T> emitter, FieldAbsoluteDate<T> approxEmissionDate) Compute emitter-to-receiver vector with FIeld.<T extends CalculusFieldElement<T>>
TOneLeggedRangeRateModel.value(FieldSignalReceptionCondition<T> receptionCondition, FieldVector3D<T> receiverVelocity, FieldPVCoordinatesProvider<T> emitter) Compute measurement without guess.<T extends CalculusFieldElement<T>>
TOneLeggedRangeRateModel.value(FieldSignalReceptionCondition<T> receptionCondition, FieldVector3D<T> receiverVelocity, FieldPVCoordinatesProvider<T> emitter, FieldAbsoluteDate<T> approxEmissionDate) Compute measurement.<T extends CalculusFieldElement<T>>
T[]RaDecModel.value(FieldSignalReceptionCondition<T> receptionCondition, FieldPVCoordinatesProvider<T> emitter) Compute theoretical measurement with FIeld.<T extends CalculusFieldElement<T>>
T[]RaDecModel.value(FieldSignalReceptionCondition<T> receptionCondition, FieldPVCoordinatesProvider<T> emitter, FieldAbsoluteDate<T> approxEmissionDate) Compute theoretical measurement with FIeld with guess for emission date.<T extends CalculusFieldElement<T>>
TTwoLeggedRangeRateModel.value(FieldSignalReceptionCondition<T> receptionCondition, FieldVector3D<T> receiverVelocity, FieldPVCoordinatesProvider<T> relay, FieldAbsoluteDate<T> approxRelayDate, FieldPVCoordinatesProvider<T> emitter, FieldAbsoluteDate<T> approxEmissionDate) Compute measurement.<T extends CalculusFieldElement<T>>
TTwoLeggedRangeRateModel.value(FieldSignalReceptionCondition<T> receptionCondition, FieldVector3D<T> receiverVelocity, FieldPVCoordinatesProvider<T> relay, FieldPVCoordinatesProvider<T> emitter) Compute measurement without guess. -
Uses of FieldSignalReceptionCondition in org.orekit.signal
Methods in org.orekit.signal that return FieldSignalReceptionConditionModifier and TypeMethodDescriptionFieldAdjustableReceiverSignalTimer.computeReceptionCondition(FieldSignalEmissionCondition<T> emissionCondition, FieldAbsoluteDate<T> approxReceptionDate) Compute signal reception condition on a link leg (typically downlink or uplink).Methods in org.orekit.signal with parameters of type FieldSignalReceptionConditionModifier and TypeMethodDescriptionFieldAdjustableEmitterSignalTimer.computeDelay(FieldSignalReceptionCondition<T> receptionCondition) Compute propagation delay on a link leg (typically downlink or uplink) without custom guess.FieldAdjustableEmitterSignalTimer.computeDelay(FieldSignalReceptionCondition<T> receptionCondition, FieldAbsoluteDate<T> approxEmissionDate) Compute propagation delay on a link leg (typically downlink or uplink).<T extends CalculusFieldElement<T>>
T[]DifferencesOfSignalArrival.computeDelays(FieldSignalReceptionCondition<T> primaryReceptionCondition, FieldPVCoordinatesProvider<T> secondaryReceiver, FieldAbsoluteDate<T> approxSecondaryReception, FieldPVCoordinatesProvider<T> emitter, FieldAbsoluteDate<T> approxEmissionDate) Compute (positive) delays from emission.<T extends CalculusFieldElement<T>>
T[]DifferencesOfSignalArrival.computeDelays(FieldSignalReceptionCondition<T> primaryReceptionCondition, FieldPVCoordinatesProvider<T> secondaryReceiver, FieldPVCoordinatesProvider<T> emitter) Compute (positive) delays from emission without guesses.<T extends CalculusFieldElement<T>>
T[]TwoLeggedSignalTimer.computeDelays(FieldSignalReceptionCondition<T> endReceptionCondition, FieldPVCoordinatesProvider<T> relay, FieldAbsoluteDate<T> approxRelayDate, FieldPVCoordinatesProvider<T> emitter, FieldAbsoluteDate<T> approxEmissionDate) Compute first and second leg delays.<T extends CalculusFieldElement<T>>
T[]TwoLeggedSignalTimer.computeDelays(FieldSignalReceptionCondition<T> endReceptionCondition, FieldPVCoordinatesProvider<T> relay, FieldPVCoordinatesProvider<T> emitter) Compute first and second leg delays without guess.FieldAdjustableEmitterSignalTimer.computeEmissionCondition(FieldSignalReceptionCondition<T> receptionCondition, FieldAbsoluteDate<T> approxEmissionDate) Compute the signal emission condition on a link leg (typically downlink or uplink).